Departments of Cell Biology.
Blood. 2012 Jul 19;120(3):e9-e16. doi: 10.1182/blood-2012-03-414920. Epub 2012 May 31.
Interactions within the hematopoietic niche in the BM microenvironment are essential for maintenance of the stem cell pool. In addition, this niche is thought to serve as a sanctuary site for malignant progenitors during chemotherapy. Therapy resistance induced by interactions with the BM microenvironment is a major drawback in the treatment of hematologic malignancies and bone-metastasizing solid tumors. To date, studying these interactions was hampered by the lack of adequate in vivo models that simulate the human situation. In the present study, we describe a unique human-mouse hybrid model that allows engraftment and outgrowth of normal and malignant hematopoietic progenitors by implementing a technology for generating a human bone environment. Using luciferase gene marking of patient-derived multiple myeloma cells and bioluminescent imaging, we were able to follow pMM cells outgrowth and to visualize the effect of treatment. Therapeutic interventions in this model resulted in equivalent drug responses as observed in the corresponding patients. This novel human-mouse hybrid model creates unprecedented opportunities to investigate species-specific microenvironmental influences on normal and malignant hematopoietic development, and to develop and personalize cancer treatment strategies.
骨髓微环境中的造血龛内相互作用对于维持干细胞池至关重要。此外,该龛被认为是化疗期间恶性祖细胞的避难所。与骨髓微环境相互作用导致的治疗耐药性是治疗血液恶性肿瘤和骨转移实体瘤的主要障碍。迄今为止,由于缺乏模拟人类情况的充分体内模型,这些相互作用的研究受到阻碍。在本研究中,我们描述了一种独特的人-鼠杂交模型,该模型通过实施一种生成人类骨骼环境的技术,允许正常和恶性造血祖细胞的植入和生长。使用荧光素酶基因标记患者来源的多发性骨髓瘤细胞和生物发光成像,我们能够跟踪 pMM 细胞的生长,并观察治疗效果。该模型中的治疗干预产生了与相应患者观察到的等效药物反应。这种新型人-鼠杂交模型为研究正常和恶性造血发育的物种特异性微环境影响以及开发和个性化癌症治疗策略创造了前所未有的机会。